论文标题
加速探测器的纠缠收集与静态探测器在热浴中
Entanglement harvesting of accelerated detectors versus static ones in a thermal bath
论文作者
论文摘要
我们对在未温度下的热水浴中的真空和静态探测器的纠缠收集进行详细比较,并发现,对于探测器的Heisenberg的较小能量差距,相对于探测器的Heisenberg能量,热浴中的静态探测器比相对更大的距离范围内的较大的范围可与不合时宜的范围相比,但是,随着能量隙的增长足够大,均匀加速的探测器可能会收获更多的纠缠,并且比热浴中的惯性范围比惯性范围更大。与真空中的静态探测器相比,存在加速辅助纠缠收集的现象,但从来没有热噪声辅助的现象。 A notably interesting feature is that, although both the amount of entanglement harvested and the harvesting-achievable interdetector separation for static detectors in a thermal bath are always a decreasing function of temperature, they are not always so for uniformly accelerated detectors as acceleration (Unruh temperature) varies, suggesting the existence of the anti-Unruh effect in the entanglement harvesting phenomena of the accelerated探测器。
We make a detailed comparison between entanglement harvesting for uniformly accelerated detectors in vacuum and static ones in a thermal bath at the Unruh temperature and find that, for a small energy gap relative to the Heisenberg energy of the detectors, static detectors in the thermal bath can harvest more entanglement and possess a comparatively larger harvesting-achievable range than the uniformly accelerated ones; however, as the energy gap grows sufficiently large, the uniformly accelerated detectors are instead likely to harvest more entanglement and possess a relatively larger harvesting-achievable range than inertial ones in the thermal bath. In comparison with static detectors in vacuum, there exist phenomena of acceleration-assisted entanglement harvesting but never that of thermal-noise-assisted one. A notably interesting feature is that, although both the amount of entanglement harvested and the harvesting-achievable interdetector separation for static detectors in a thermal bath are always a decreasing function of temperature, they are not always so for uniformly accelerated detectors as acceleration (Unruh temperature) varies, suggesting the existence of the anti-Unruh effect in the entanglement harvesting phenomena of the accelerated detectors.